NSR Query Results


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NSR database version of April 26, 2024.

Search: Author = G.F.Prete

Found 6 matches.

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2010KO16      Phys.Lett. B 686, 227 (2010)

E.M.Kozulin, G.N.Knyazheva, I.M.Itkis, M.G.Itkis, A.A.Bogachev, L.Krupa, T.A.Loktev, S.V.Smirnov, V.I.Zagrebaev, J.Aysto, W.H.Trzaska, V.A.Rubchenya, E.Vardaci, A.M.Stefanini, M.Cinausero, L.Corradi, E.Fioretto, P.Mason, G.F.Prete, R.Silvestri, S.Beghini, G.Montagnoli, F.Scarlassara, F.Hanappe, S.V.Khlebnikov, J.Kliman, A.Brondi, A.Di Nitto, R.Moro, N.Gelli, S.Szilner

Investigation of the reaction 64Ni + 238U being an option of synthesizing element 120

NUCLEAR REACTIONS 238U(48Ca, X), E=220-260 MeV; 238U(64Ni, X), E=320-385 MeV; measured fragment yields and energy distributions using CORSET time-of-flight spectrometer; deduced σ; analyzed reaction mechanism features using Viola systematics. 244Pu(58Fe, X), E=328 MeV; analyzed data. Discussed superheavy element formation.

doi: 10.1016/j.physletb.2010.02.041
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2004MA99      Nucl.Phys. A746, 497c (2004)

M.Mazzocco, P.Scopel, C.Signorini, L.Fortunato, F.Soramel, I.J.Thompson, A.Vitturi, M.Barbui, A.Brondi, M.Cinausero, D.Fabris, E.Fioretto, G.La Rana, M.Lunardon, R.Moro, A.Ordine, G.F.Prete, V.Rizzi, L.Stroe, M.Trotta, E.Vardaci, G.Viesti

6Li breakup from 208Pb target at Coulomb barrier energies: doorway to reaction mechanism induced by loosely bound/halo nuclei

NUCLEAR REACTIONS 208Pb(6Li, dα), (6Li, npα), E=31, 33, 35, 39 MeV; measured particle spectra, excitation energy distributions; deduced breakup mechanism features.

doi: 10.1016/j.nuclphysa.2004.09.076
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2003MA85      Eur.Phys.J. A 18, 583 (2003)

M.Mazzocco, P.Scopel, C.Signorini, L.Fortunato, F.Soramel, I.J.Thompson, A.Vitturi, M.Barbui, A.Brondi, M.Cinausero, D.Fabris, E.Fioretto, G.La Rana, M.Lunardon, R.Moro, A.Ordine, G.F.Prete, V.Rizzi, L.Stroe, M.Trotta, E.Vardaci, G.Viesti

Excitation of 6Li above the breakup threshold in the 6Li + 208Pb system around the Coulomb barrier

NUCLEAR REACTIONS 208Pb(6Li, 6Li'), (6Li, dα), E=31, 33, 35, 39 MeV; measured outgoing particles invariant mass spectra, σ(E, θ); deduced breakup mechanism features.Coupled-channels analysis.

doi: 10.1140/epja/i2003-10097-y
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2001SI23      Eur.Phys.J. A 10, 249 (2001)

C.Signorini, M.Mazzocco, G.F.Prete, F.Soramel, L.Stroe, A.Andrighetto, I.J.Thompson, A.Vitturi, A.Brondi, M.Cinausero, D.Fabris, E.Fioretto, N.Gelli, J.Y.Guo, G.La Rana, Z.H.Liu, F.Lucarelli, R.Moro, G.Nebbia, M.Trotta, E.Vardaci, G.Viesti

Strong Reaction Channels at Barrier Energies in the System 6Li + 208Pb

NUCLEAR REACTIONS 208Pb(6Li, X), (6Li, αX), (7Li, X), (7Li, αX), E=29-39 MeV; measured particle spectra, σ, σ(θ); deduced reaction mechanism features.

doi: 10.1007/s100500170109
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1615.


1992MU10      Z.Phys. A341, 131 (1992)

L.Muller, F.Soramel, E.Adamides, S.Beghini, L.Corradi, G.LoBianco, B.Million, N.Molho, H.Moreno, D.R.Napoli, G.F.Prete, F.Scarlassara, G.F.Segato, S.Signorelli, C.Signorini, P.Spolaore, A.M.Stefanini

Study of Superdeformed Bands in Nuclei with A ≈ 150 by Heavy-Ion-γ Coincidences

NUCLEAR REACTIONS, ICPND 124Sn(33S, 5n), (33S, 4np), (33S, 6n), (33S, 5np), (33S, 7n), (33S, 6np), (33S, 5n2p), (33S, 7n2p), (33S, 5nα), E=160, 170 MeV; measured γ(evaporation residue)-coin; deduced residue relative production σ. 152,151Dy, 151Tb deduced superdeformed bands.


1992ST11      Nucl.Phys. A548, 453 (1992)

A.M.Stefanini, L.Corradi, D.Ackermann, A.Facco, F.Gramegna, H.Moreno, L.Mueller, D.R.Napoli, G.F.Prete, P.Spolaore, S.Beghini, D.Fabris, G.Montagnoli, G.Nebbia, J.A.Ruiz, G.F.Segato, C.Signorini, G.Viesti

Cross Sections and Mean Angular Momenta for 64Ni + 92,96Zr Fusion Near and Below the Coulomb Barrier

NUCLEAR REACTIONS 92,96Zr(64Ni, X), E=202-269 MeV; measured evaporation residues, γγ-coin; deduced fusion σ(E), average spin distribution around, below Coulomb barrier. Coupled-channel calculations. Enriched targets, recoil mass spectrometer, electrostatic beam separator.

doi: 10.1016/0375-9474(92)90695-G
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